Literature DB >> 8661930

Geovibrio ferrireducens, a phylogenetically distinct dissimilatory Fe(III)-reducing bacterium.

F Caccavo1, J D Coates, R A Rossello-Mora, W Ludwig, K H Schleifer, D R Lovley, M J McInerney.   

Abstract

A new, phylogenetically distinct, dissimilatory, Fe(III)-reducing bacterium was isolated from surface sediment of a hydrocarbon-contaminated ditch. The isolate, designated strain PAL-1, was an obligately anaerobic, non-fermentative, motile, gram-negative vibrio. PAL-1 grew in a defined medium with acetate as electron donor and ferric pyrophosphate, ferric oxyhydroxide, ferric citrate, Co(III)-EDTA, or elemental sulfur as sole electron acceptor. PAL-1 also used proline, hydrogen, lactate, propionate, succinate, fumarate, pyruvate, or yeast extract as electron donors for Fe(III) reduction. It is the first bacterium known to couple the oxidation of an amino acid to Fe(III) reduction. PAl-1 did not reduce oxygen, Mn(IV), U(VI), Cr(VI), nitrate, sulfate, sulfite, or thiosulfate with acetate as the electron donor. Cell suspensions of PAL-1 exhibited dithionite-reduced minus air-oxidized difference spectra that were characteristic of c-type cytochromes. Analysis of the 16S rRNA gene sequence of PAL-1 showed that the strain is not related to any of the described metal-reducing bacteria in the Proteobacteria and, together with Flexistipes sinusarabici, forms a separate line of descent within the Bacteria. Phenotypically and phylogenetically, strain PAl-1 differs from all other described bacteria, and represents the type strain of a new genus and species, Geovibrio ferrireducens.

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Year:  1996        PMID: 8661930     DOI: 10.1007/s002030050340

Source DB:  PubMed          Journal:  Arch Microbiol        ISSN: 0302-8933            Impact factor:   2.552


  19 in total

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2.  Dissimilatory metal reduction by the facultative anaerobe Pantoea agglomerans SP1.

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3.  Identification of anaerobic selenate-respiring bacteria from aquatic sediments.

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5.  Biological control of hog waste odor through stimulated microbial Fe(III) reduction.

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6.  Ferric iron reduction by bacteria associated with the roots of freshwater and marine macrophytes.

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7.  Immobilization of radionuclides and heavy metals through anaerobic bio-oxidation of Fe(II).

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8.  Different inhibitory mechanisms of chlortetracycline and enrofloxacin on mesophilic anaerobic degradation of propionate.

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9.  Abundance and phylogenetic affiliation of iron reducers in activated sludge as assessed by fluorescence in situ hybridization and microautoradiography.

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10.  Characterization of a soluble oxidoreductase from the thermophilic bacterium Carboxydothermus ferrireducens.

Authors:  Rob Uche Onyenwoke; R Geyer; Juergen Wiegel
Journal:  Extremophiles       Date:  2009-06-18       Impact factor: 2.395

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